Abstract:
Systems, methods, and computer readable mediums are provided to generate a number of targets for a panoramic image, each of the targets defining a portion of the panoramic image, monitor a position of a user device with respect to a current target, responsive to determining that the user device is properly positioned with respect to the current target, capture a first image for the current target using a camera of the user device, monitor the position of the user device with respect to a next target, responsive to determining that the user device is properly positioned with respect to the next target, capture a second image for the next target using the camera of the user device; and generate the panoramic image using the first image and the second image.
Abstract:
A method and system is disclosed for simulating different types of camera lens on a device by guiding a user through a set of images to be captured in connection with one or more desired lens effects. In one aspect, a wide-angle lens may be simulated by taking a plurality of images that have been taken at a particular location over a set of camera orientations that are determined based on the selection of the wide-angle lens. The mobile device may provide prompts to the user indicating the camera orientations for which images should be captured in order to generate the simulated camera lens effect.
Abstract:
Systems and methods of the present disclosure provide techniques for providing user-specified ways of navigating through real-world three-dimensional geographic imagery that spans space and time. An exemplary method includes identifying a plurality of images depicting a geographic location at street level. The images are captured at the geographic location over a span of time. Using a processor, image data is associated with the plurality of images. The image data includes information representing positional data and a time dimension related to the plurality of images. Using the processor, a user's navigational intent to move back and forward through the time dimension is predicted based on a navigational signal. The exemplary method further includes selecting a set of images from the plurality of images based on the image data and the predicted navigational intent. The set of images depict conditions at the geolocation for one or more time periods.
Abstract:
Systems, methods, and computer readable mediums are provided to generate a number of targets for a panoramic image, each of the targets defining a portion of the panoramic image, monitor a position of a user device with respect to a current target, responsive to determining that the user device is properly positioned with respect to the current target, capture a first image for the current target using a camera of the user device, monitor the position of the user device with respect to a next target, responsive to determining that the user device is properly positioned with respect to the next target, capture a second image for the next target using the camera of the user device; and generate the panoramic image using the first image and the second image.
Abstract:
Systems, methods, and computer readable mediums are provided to generate a number of targets for a panoramic image, each of the targets defining a portion of the panoramic image, monitor a position of a user device with respect to a current target, responsive to determining that the user device is properly positioned with respect to the current target, capture a first image for the current target using a camera of the user device, monitor the position of the user device with respect to a next target, responsive to determining that the user device is properly positioned with respect to the next target, capture a second image for the next target using the camera of the user device; and generate the panoramic image using the first image and the second image.
Abstract:
Systems and methods facilitating the capture of contiguous images suitable for composition into a wide-angle or panoramic image. The method may include displaying smart graphical targets on an image capture graphical user interface representing target focal points to direct a camera to in order capture images with sufficient continuity or overlap for panorama creation. In one implementation, the method may include automatically capturing an image when the center of the current field of view is aligned with or within a threshold distance of a target focal point. In another implementation, the method may provide graphical targets along multiple axes. In another implementation the method may provide graphical targets for creating a panoramic image adhering to a certain aspect ratio. In another implementation, the method may suggest graphical targets on the motion of a camera after capturing a first image.
Abstract:
In response to a request for images of a location, a set of images depicting different conditions at the location is identified. Each image of the set of images is associated with condition information defining the conditions depicted in that image. A point in time of interest to a user is determined, and information identifying environmental conditions at the location for that point in time may be received. The set of images are ranked based on the received environmental information and the condition information for each image. An image from the set of images is selected for display based on the selected image's rank relative to other images of the set of images. The selected image depicts conditions at the location most closely matching environmental conditions expected at the point in time.
Abstract:
In an exemplary method, a request for images of a location is received. In response to the request, a set of images depicting different conditions at the location is identified. Each image of the set of images is associated with condition information defining the conditions depicted in that image. It may be determined when a user will be at the location at a future point in time. Information identifying current environmental conditions at the location for the future point in time may be received. The set of images are ranked based on the received environmental information and the condition information for each image. An image from the set of images is selected for display based on the selected image's rank relative to other images of the set of images. The selected image depicts current conditions at the location most closely matching environmental conditions expected at the future point in time.
Abstract:
Systems and methods facilitating the capture of contiguous images suitable for composition into a wide-angle or panoramic image. The method may include displaying smart graphical targets on an image capture graphical user interface representing target focal points to direct a camera to in order capture images with sufficient continuity or overlap for panorama creation. In one implementation, the method may include automatically capturing an image when the center of the current field of view is aligned with or within a threshold distance of a target focal point. In another implementation, the method may provide graphical targets along multiple axes. In another implementation the method may provide graphical targets for creating a panoramic image adhering to a certain aspect ratio. In another implementation, the method may suggest graphical targets on the motion of a camera after capturing a first image.
Abstract:
Systems, methods, and computer readable mediums are provided to generate a number of targets for a panoramic image, each of the targets defining a portion of the panoramic image, monitor a position of a user device with respect to a current target, responsive to determining that the user device is properly positioned with respect to the current target, capture a first image for the current target using a camera of the user device, monitor the position of the user device with respect to a next target, responsive to determining that the user device is properly positioned with respect to the next target, capture a second image for the next target using the camera of the user device; and generate the panoramic image using the first image and the second image.